Biotechnology Institute, School of Environment and Chemical Engineering, Dalian Jiaotong University, Dalian 116028, China.
Institute of Medicinal Plant, Chinese Academy of Medical Sciences, Beijing 100193, China.
Curr Drug Metab. 2017;18(12):1071-1084. doi: 10.2174/1389200218666170531111624.
Salvia is the largest genus of family Lamiaceae and has nearly 1000 species. This genus produces several representative phytometabolites, e.g., diterpenoids and phenolic acids. The traditional uses in ethnomedicine and contemporary experimental studies have corroborated extensive therapeutic efficacy of Salvia plants. Drug metabolism and pharmacokinetic (DMPK) studies of Salvia natural products and their derivatives are indispensable in the optimization of lead compounds. New chemical entity with improved DMPK profiles is preferred. So far, there are few summaries concerning about the DMPK features of Salvia derived medicinal compounds. Tanshinones and Salvianolic acids raise concerns of herb-drug interaction. DMPK studies of various Salvia species, especially Salvia miltiorrhiza, are swiftly increasing.
Here, the latest awareness, as well as the gaps of the DMPK issues in drug development and clinical usage of Salvia compounds, was highlighted.
Herb-herb interactions of Salvia-containing traditional Chinese medicine (TCM) medicine pair/formula significantly impact the PK/pharmacodynamic performance of compounds thereof, which may inspire researchers to develop novel herbal formula. While the absorption, distribution, metabolism, elimination and toxicity (ADME/T) of some tanshinones and Salvianolic acids have been outlined, DMPK studies should be extended to more compounds, Salvia species, and Salvia-containing formulations. In the context of systems pharmacology, the DMPK knowledgebase is expected to streamline the Salvia-based drug discovery and development.
鼠尾草是唇形科中最大的属,拥有近 1000 个物种。该属产生了几种具有代表性的植物代谢物,例如二萜类和酚酸类。传统的民族医学用途和当代的实验研究证实了鼠尾草植物具有广泛的治疗功效。鼠尾草天然产物及其衍生物的药物代谢动力学(DMPK)研究对于优化先导化合物是必不可少的。具有改善 DMPK 特征的新化学实体是首选的。到目前为止,关于鼠尾草衍生药物化合物的 DMPK 特征的综述很少。丹参酮和丹酚酸引起了药物相互作用的关注。各种鼠尾草物种,尤其是丹参的 DMPK 研究正在迅速增加。
本文强调了在开发和临床使用鼠尾草化合物时,DMPK 问题的最新认识和差距。
含鼠尾草的中药(TCM)药物对/方剂的草药-草药相互作用会显著影响其化合物的 PK/药效学性能,这可能会激发研究人员开发新的草药配方。虽然一些丹参酮和丹酚酸的吸收、分布、代谢、排泄和毒性(ADME/T)已经概述,但 DMPK 研究应扩展到更多的化合物、鼠尾草物种和含鼠尾草的制剂。在系统药理学的背景下,DMPK 知识库有望简化基于鼠尾草的药物发现和开发。